Fetching the paper…
Reading the bibliography…
The Nancy Grace Roman Space Telescope Coronagraph Instrument is a critical technology demonstrator for NASA's Habitable Worlds Observatory.
Shi, F., Balasubramanian, K., Hein, R., Lam, R., Moore, D., Moore, J., Patterson, K., Poberezhskiy, I., Shields, J., Sidick, E., Tang, H., Truong, T., Wallace, J. K., Wang, X., and Wilson, D., “Low-order wavefront sensing and control for wfirst-afta coronagraph,” JATIS
2016
Earlier work this paper cites.
Batalha, N. E., Smith, A. J. R. W., Lewis, N. K., Marley, M. S., Fortney, J. J., and Macintosh, B., “Color classification of extrasolar giant planets: Prospects and cautions,” The Astronomical Journal
2018
Earlier work this paper cites.
Shi, F., Kern, B. D., Marx, D. S., Patterson, K., Prada, C. M., Seo, B.-J., Shelton, J. C., Shields, J., Tang, H., Truong, T., Shaw, J., Cady, E. J., and Lam, R., “Wfirst low order wavefront sensing and control dynamic testbed performance under the flight like photon flux,” Space Telescopes and Instrumentation 2018: Optical, Infrared, and Millimeter Wave
2018
Earlier work this paper cites.
Tang, H., Rodgers, M., Creager, B., Krist, J. E., McGuire, J., Patterson, K., Rud, M., Shi, F., and Zhao, F., “The wfirst coronagraph instrument phase b optical design,” Proceedings of SPIE - Techniques and Instrumentation for Detection of Exoplanets IX
2019
Earlier work this paper cites.
Mennesson, B., Juanola-Parramon, R., Nemati, B., Ruane, G., Bailey, V. P., Bolcar, M., Martin, S., Zimmerman, N., Stark, C., Pueyo, L., Benford, D., Cady, E., Crill, B., Douglas, E., Gaudi, B. S., Kasdin, J., Kern, B., Krist, J., Kruk, J., Luchik, T., Macintosh, B., Mandell, A., Mawet, D., Poberezhskiy, I., Rhodes, J., Riggs, A. J., Turnbull, M., Roberge, A., Shi, F., Siegler, N., Stapelfeldt, K., Ygouf, M., Zellem, R., and Zhao, F., “Paving the way to future missions: The roman space telescope coronagraph technology demonstration,” arXiv
2020
Earlier work this paper cites.
Lacy, B. and Burrows, A., “Prospects for directly imaging young giant planets at optical wavelengths,” The Astrophysical Journal
2020
Earlier work this paper cites.
Ruane, G., Wallace, J. K., Steeves, J., Mejia Prada, C., Seo, B.-J., Bendek, E., Coker, C., Chen, P., Crill, B., Jewell, J., Kern, B., Marx, D., Poon, P. K., Redding, D., Riggs, A. J. E., Siegler, N., and Zimmer, R., “Wavefront sensing and control in space-based coronagraph instruments using zernike’s phase-contrast method,” JATIS
2020
Earlier work this paper cites.
Douglas, E. S., Ashcraft, J. N., Belikov, R., Debes, J., Kasdin, J., Krist, J., Lacy, B., Nemati, B., Milani, K., Pogorelyuk, L., Riggs, A., Savransky, D., and Sirbu, D., “A review of simulation and performance modeling tools for the roman coronagraph instrument,” Proceedings of SPIE, Space Telescopes and Instrumentation 2020: Optical, Infrared, and Millimeter Wave
2020
Earlier work this paper cites.
Groff, T. D., Zimmerman, N. T., Subedi, H. B., Rizzo, M., Titus, J., Lyons, J., Bell, D., Gaylin, S., Gao, G., Pasquale, B. A., Nicolaeff, N., Tamura, M., and Shi, F., “Roman space telescope cgi: prism and polarizer characterization modes,” Proc. SPIE Space Telescopes and Instrumentation 2020: Optical, Infrared, and Millimeter Wave
2021
Earlier work this paper cites.
Riggs, A. E., Moody, D. C., Gersh-Range, J., Sirbu, D., Belikov, R., Bendek, E., Bailey, V. P., Balasubramanian, K., Wilson, D. W., Basinger, S. A., Debes, J., Groff, T. D., Kasdin, N. J., Mennesson, B., Moore, D. M., Ruane, G., Sidick, E., Siegler, N., Trauger, J., and Zimmerman, N. T., “Flight mask designs of the roman space telescope coronagraph instrument,” Proc. SPIE Techniques and Instrumentation for Detection of Exoplanets X
2021
Earlier work this paper cites.
Milani, K. and Douglas, E. S., “Faster imaging simulation through complex systems: a coronagraphic example,” Proc SPIE Space Telescopes and Instrumentation 2020: Optical, Infrared, and Millimeter Wave
2021
Cited alongside, same era.
Saxena, P., Villanueva, G. L., Zimmerman, N. T., Mandell, A. M., and Smith, A. J. R. W., “Simulating Reflected Light Exoplanet Spectra of the Promising Direct Imaging Target, Andromedae d, with a New, Fast Sampling Method Using the Planetary Spectrum Generator,” AJ
2021
Cited alongside, same era.
Ygouf, M., Zimmerman, N., Bailey, V., Krist, J., Zellem, R., and Debes, J., “Roman coronagraph instrument post processing report - os9 hlc distribution,” tech. rep. (2021)
2021
Cited alongside, same era.
Poberezhskiy, I. Y., Heydorff, K., Luchik, T., Zhao, F., Cady, E., Bedrosian, G., Colavita, M., Creager, B., Goullioud, R., Groff, T. D., Grue, A., Monacelli, B., Morrissey, P., Kempenaar, J., Kern, B. D., King, M. E., Koch, T., Krist, J. E., Kuan, G. M., Lam, J. C., Lewis, D., Mok, F., Muliere, D., Nemati, B., Noecker, C., Oseas, J. M., Riggs, A. J., Shi, F., and Shreckengost, B., “Roman coronagraph instrument: engineering overview and status,” Proc. SPIE 12180 Space Telescopes and Instrument 2022: Optical, Infrared, and Millimeter Wave
Anche, R. M., Douglas, E. S., Milani, K., Ashcraft, J., and Debes, J., “Simulations of polarimetric observations of debris disks through the roman coronagraph instrument,” Proc. SPIE Space Telescopes and Instrument 2022: Optical, Infrared, and Millimeter Wave
2022
Later among the works it cites.
Ygouf, M., Zimmerman, N., and Bailey, V., “Roman coronagraph instrument post processing report - os9 spc distribution,” tech. rep. (2022)
2022
Later among the works it cites.
Groff, T. D., Zimmerman, N., Subedi, H., Titus, J., Bell, D., Gao, G., Gaylin, S., Nicolaeff, N., Yamada, T., and Tamura, M., “Rst cgi: final verification and calibration of prism and polarizer flight units,” Proc. SPIE Techniques and Instrumentation for Detection of Exoplanets XI
2023
Closest in time.
Morrissey, P., Harding, L., Bush, N., Bottom, M., Nemati, B., Daniel, A., Jun, B., Martinez, L. M. S., Desai, N., Barry, D., Davis, R.-T., Demers, R., Hall, D., Holland, A., Turner, P., and Shortt, B., “Flight photon counting electron multiplying charge coupled device development for the roman space telescope coronagraph instrument,” JATIS
alphaXiv searches the wider corpus for related work and actual follow-ups.
alphaXiv is searching for related work…
2022
Cited alongside, same era.
Mennesson, B., Bailey, V. P., Zellem, R., Hildebrandt, S. R., Ygouf, M., Rhodes, J., Zimmerman, N. T., Nemati, B., Gonzalez, G., Cady, E., Kern, B. D., Koch, T., Krist, J., Heydorff, K., Luchik, T., Mok, F., Morrissey, P., Poberezhskiy, I., Riggs, A. J. E., Shi, F., Zhao, F., Akeson, R., Armus, L., Greenbaum, A., Ingalls, J., and Lowrance, P., “The Roman Space Telescope coronagraph technology demonstration: current status and relevance to future missions,” Proc. SPIE Space Telescopes and Instrument 2022: Optical, Infrared, and Millimeter Wave
2022
Cited alongside, same era.
Caillat, A., Ferrari, M., Marcos, M., Pariès, C., Bonnefoi, A., Vitrac, V., Roulet, M., and Hugot, E., “Super polished mirrors for the Roman Space Telescope CoronaGraphic Instrument: design, manufacturing, and optical performances,” Proc. SPIE Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave
2022
Cited alongside, same era.
Daigle, O., Veilleux, J., Grandmont, F. J., Morrissey, P., Basset, C., Bush, N., Hoenk, M., Gilbert, A., Turcotte, J., and Ghodoussi, A., “Nancy Grace Roman Space Telescope coronagraph EMCCD flight camera electronics development,” Proc. SPIE Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave
2022
Cited alongside, same era.
Gersh-Range, J., Riggs, A. J. E., and Kasdin, N. J., “Flight designs and pupil error mitigation for the bowtie shaped pupil coronagraph on the Nancy Grace Roman Space Telescope,” JATIS
2022
Cited alongside, same era.
Dube, B. D., Riggs, A. J., Kern, B. D., Cady, E. J., Krist, J. E., Zhou, H., Nemati, B., Seo, B.-J., Steeves, J., Arndt, D., Mandić, M., Shields, J., Boussalis, D., Valverde, A., Rahman, Z., and Fathpour, N., “Exascale integrated modeling of low-order wavefront sensing and control for the roman coronagraph instrument,” Journal of the Optical Society of America A
2022
Cited alongside, same era.
Douglas, E. S., Debes, J., Mennesson, B., Nemati, B., Ashcraft, J., Ren, B., Stapelfeldt, K. R., Savransky, D., Lewis, N. K., and Macintosh, B., “Sensitivity of the Roman Coronagraph Instrument to Exozodiacal Dust,” PASP
2022
Cited alongside, same era.
https://github.com/nasavbailey/DI-flux-ratio-plot/
Cited in the paper.
https://plandb.sioslab.com/about.php
Cited in the paper.
2023
Closest in time.
Zhou, H., Kern, B. D., Bush, N., Krist, J. E., and Poberezhskiy, I. Y., “Roman coronagraph howfsc modeling: case study and raw contrast performance prediction,” Proc. SPIE Techniques and Instrumentation for Detection of Exoplanets XI
2023
Closest in time.
Sirbu, D., Belikov, R., Bendek, E., Marx, D., Mejia Prada, C., Riggs, A. J. E., and Zhou, H., “Multi-star wavefront control at the occulting mask coronagraph testbed: monochromatic laboratory demonstration for the roman coronagraph instrument,” Proc. SPIE Techniques and Instrumentation for Detection of Exoplanets XI
2023
Closest in time.
Milani, K., Douglas, E. S., Haffert, S., and van Gorkom, K., “Simulating the efficacy of the implicit-electric-field-conjugation algorithm for the roman coronagraph with noise,” Proc. SPIE Techniques and Instrumentation for Detection of Exoplanets XI
2023
Closest in time.
Krist, J. E., Steeves, J., Saini, N., Dube, B., and Arndt, D., “End-to-end numerical modeling of the roman space telescope coronagraphic instrument,” Proc. SPIE Techniques and Instrumentation for Detection of Exoplanets XI
2023
Closest in time.
Doelman, D. S., Belaouchi, H., Riggs, A. E., Mennesson, B., Ouellet, M., Rietjens, J., Hoevers, H., and Snik, F., “Falco simulations of high-contrast polarimetry with the nancy grace roman space telescope coronagraph instrument,” Proc. SPIE Techniques and Instrumentation for Detection of Exoplanets XI
2023
Closest in time.